不透水面
低影响开发
地表径流
雨水
环境科学
第一次冲洗
污染物
城市化
环境工程
雨水管理
雨水管理模型
污染
城市径流
城市规划
水文学(农业)
水资源管理
土木工程
工程类
生物
经济增长
经济
有机化学
化学
岩土工程
生态学
作者
Sang‐Soo Baek,Dongho Choi,Jae‐Woon Jung,Hyung‐Jin Lee,Hyuk Lee,Kwang‐Sik Yoon,Kyung Hwa Cho
出处
期刊:Water Research
[Elsevier BV]
日期:2015-08-24
卷期号:86: 122-131
被引量:255
标识
DOI:10.1016/j.watres.2015.08.038
摘要
Currently, continued urbanization and development result in an increase of impervious areas and surface runoff including pollutants. Also one of the greatest issues in pollutant emissions is the first flush effect (FFE), which implies a greater discharge rate of pollutant mass in the early part in the storm. Low impact development (LID) practices have been mentioned as a promising strategy to control urban stormwater runoff and pollution in the urban ecosystem. However, this requires many experimental and modeling efforts to test LID characteristics and propose an adequate guideline for optimizing LID management. In this study, we propose a novel methodology to optimize the sizes of different types of LID by conducting intensive stormwater monitoring and numerical modeling in a commercial site in Korea. The methodology proposed optimizes LID size in an attempt to moderate FFE on a receiving waterbody. Thereby, the main objective of the optimization is to minimize mass first flush (MFF), which is an indicator for quantifying FFE. The optimal sizes of 6 different LIDs ranged from 1.2 mm to 3.0 mm in terms of runoff depths, which significantly moderate the FFE. We hope that the new proposed methodology can be instructive for establishing LID strategies to mitigate FFE.
科研通智能强力驱动
Strongly Powered by AbleSci AI